Medical or a dental instrument and a method for manufacturing the same

ABSTRACT

A medical or a dental instrument comprises an operative portion ( 101 ) for operations according to the purpose of use of the instrument, a center portion ( 103 ) mechanically connecting to the operative portion, and a radio frequency identifier ( 106 ) located on the center portion and capable of being read from a distance of the instrument. The instrument further comprises a tubular handle portion ( 104 ) provided to surround the radio frequency identifier and at least a part of the center portion, the tubular handle portion being cast on the instrument so that the material of the tubular handle portion is adhered to the material of the center portion. Thus, the tubular handle portion acts not only as the handle portion but also as at least a part of a fixation system attaching the radio frequency identifier to the instrument. An instrument of such construction is easy to keep hygienic.

FIELD OF THE INVENTION

The invention relates to a medical or a dental instrument and to a method for manufacturing the same.

BACKGROUND

In many cases, authorities and actors of the medical or dental field want to have an infallible and traceable solution to follow instruments so as be able to trace disinfection, sterilization, reparation, and other operations directed to or carried out with the instruments under consideration. Nowadays, users do not typically have the time and willingness to generate reports manually because of the related workload. In addition, there is a risk of errors with manual data recording and identification of instruments, which prevents regarding the manually recorded data as an irrefutable proof of what has been done and what has been not done.

A known solution uses tags including a radio frequency identifier “RFID”. The tag is glued on the instrument to be identified. It is however challenging to provide a glue joint that produces a reliable long term adhesion of the tag on the instrument in cases where the instrument is exposed to operations such as sterilization, disinfection, and/or ultrasonic baths.

WO2008062387 describes an instrument comprising a radio frequency identifier. The radio frequency identifier is embedded in a polymer sheet that is attached on a surface of the handle of the instrument. The polymer sheet that includes the radio frequency identifier can be, for example, wrapped around the handle of the instrument. In order to obtain an even surface, it is possible to provide the instrument with a recess corresponding in size to the polymer sheet. In an advantageous embodiment described in WO2008062387, the polymer sheet comprises two layers between which the radio frequency identifier is located. The two layers are made of materials having different hardness. The layer of the harder material is against the instrument in order to obtain a better adhesion. The softer material protects the radio frequency identifier against external impacts. It may be, however, in some circumstances hard to guarantee that the polymer sheet remains firmly attached to the instrument. Furthermore, it may be hard to guarantee that no slits are left between the polymer sheet and the handle of the instrument. The slits are undesirable because, in some circumstances, they may collect impurities.

SUMMARY

The following presents a simplified summary in order to provide a basic understanding of some aspects of various embodiments of the invention. The summary is not an extensive overview of the invention. It is neither intended to identify key or critical elements of the invention nor to delineate the scope of the invention. The following summary merely presents some concepts of the invention in a simplified form as a prelude to a more detailed description of exemplifying embodiments of the invention.

In accordance with the invention, there is provided a new method for manufacturing a medical or a dental instrument that comprises an operative portion for operations according to the purpose of use of the instrument, a center portion mechanically connecting to the operative portion, and a radio frequency identifier. A method according to the invention comprises:

-   -   placing the radio frequency identifier on the center portion of         the instrument, and     -   providing a tubular handle portion to surround the radio         frequency identifier and at least a part of the center portion         by casting the tubular handle portion on the instrument so that         the material of the tubular handle portion gets adhered to the         material of the center portion and so that the radio frequency         identifier is located between the tubular handle portion and the         center portion after the casting.

The benefit of casting the tubular handle portion on the instrument so that the material of the tubular handle portion is adhered to the material of the center portion is that there are no such slits between the tubular handle portion and the center portion which would collect impurities, and thus it is easier to keep the instrument hygienic. Therefore, the method according to the invention provides an instrument where the tubular handle portion acts not only as the handle portion for providing a gripping surface of the instrument but also as at least a part of a fixation system that:

-   -   attaches the radio frequency identifier to the instrument, and         furthermore     -   is easy to keep hygienic.

The tubular handle portion is advantageously made of material whose electrical resistivity is sufficiently high so that the operation of the radio frequency identifier is not hindered. The electrical resistivity is advantageously at least 10⁻³ Ωm at 20° C. More advantageously, the tubular handle portion is made of electrically non-conductive material.

In an instrument according to an advantageous and exemplifying embodiment of the invention, the material of the tubular handle portion is mechanically softer than the material of the center portion. Thus, the center portion can be arranged to provide the required mechanical stiffness and the tubular handle portion can be arranged to enable a user to have a good grip on the instrument with a relatively small pressing force.

In accordance with the invention, there is provided also a new medical or dental instrument that comprises:

-   -   an operative portion for operations according to the purpose of         use of the instrument,     -   a center portion mechanically connecting to the operative         portion,     -   a radio frequency identifier on the center portion and capable         of being read from a distance of the instrument and capable of         storing information, and     -   a tubular handle portion provided to surround the radio         frequency identifier and at least a part of the center portion         so that the radio frequency identifier is located between the         tubular handle portion and the center portion, the tubular         handle portion being cast on the instrument so that the material         of the tubular handle portion is adhered to the material of the         center portion.

A number of non-limiting and exemplifying embodiments of the invention are described in accompanied dependent claims.

Various non-limiting and exemplifying embodiments of the invention both as to constructions and to methods of manufacturing, together with additional objects and advantages thereof, will be best understood from the following description of specific exemplifying embodiments when read in connection with the accompanying drawings.

The verbs “to comprise” and “to include” are used in this document as open limitations that neither exclude nor require the existence of unrecited features. The features recited in depending claims are mutually freely combinable unless otherwise explicitly stated. Furthermore, it is to be understood that the use of “a” or “an”, i.e. a singular form, throughout this document does not exclude a plurality.

BRIEF DESCRIPTION OF THE FIGURES

Exemplifying embodiments of the invention and their advantages are explained in greater detail below in the sense of examples and with reference to the accompanying drawings, in which:

FIGS. 1a and 1b illustrate an instrument according to an exemplifying embodiment of the invention,

FIGS. 2a, 2b and 2c show cross-sections of instruments according to exemplifying embodiments of the invention, and

FIG. 3 shows a flowchart of a method according to an exemplifying embodiment of the invention for manufacturing a medical or a dental instrument.

DESCRIPTION OF EXEMPLIFYING EMBODIMENTS

FIG. 1a shows a partial section view of an instrument according to an exemplifying embodiment of the invention. FIG. 1b shows a view of a section taken along the line A-A shown in FIG. 1a . The section plane is parallel with the xy-plane of a coordinate system 199. The instrument illustrated in FIGS. 1a and 1b is obtainable with a method according to an exemplifying embodiment of the invention. In the exemplifying case illustrated in FIGS. 1a and 1b , the instrument is a dental instrument suitable for e.g. removing dental calculus. The instrument comprises an operative portion 101 that has a tip portion 102 for performing the operations according to the purpose of use of the instrument. The instrument comprises a center portion 103 that constitutes a mechanical support core of the instrument and is mechanically connected to the operative portion 101 as illustrated in FIG. 1a . In the exemplifying case illustrated in FIGS. 1a and 1b , the instrument comprises operative portions 102 at its both ends. It is, however, also possible that an instrument according to an exemplifying embodiment of the invention comprises an operative portion 102 at only one end. The instrument comprises a radio frequency identifier “RFID” 106 capable of being read from a distance of the instrument and capable of storing information. The information may contain for example identifying information identifying the instrument as an individual object from among similar instruments and/or information indicating e.g. a date of manufacture of the instrument, the manufacturer of the instrument and/or some other information related directly or indirectly to the instrument. The instrument further comprises a tubular handle portion 104 that has been mold cast to surround the radio frequency identifier 106 and at least a part of the center portion 103 so that the material of the tubular handle portion 104 is adhered to the material of the center portion. The above-mentioned radio frequency identifier 106 is located between the center portion 103 and the tubular handle portion 104 as illustrated in FIGS. 1a and 1b . The benefit of the structure where the material of the tubular handle portion 104 is adhered to the material of the center portion 103 is that there are no such slits between the tubular handle portion 104 and the center portion 103 which could collect impurities, and thus the instrument is easier to keep hygienic. Thus, the tubular handle portion 103 acts not only as the handle portion for providing a gripping surface 105 of the instrument but also as at least a part of a fixation system attaching the radio frequency identifier 106 to the instrument. An instrument of such construction is easy to keep hygienic.

The tubular handle portion 104 is advantageously made of material whose electrical resistivity is sufficiently high so that the operation of the radio frequency identifier 106 is not hindered. The electrical resistivity is advantageously at least 10⁻³ Ωm at 20° C. More advantageously, the tubular handle portion 104 is made of electrically non-conductive material.

In an instrument according to an exemplifying embodiment of the invention, the material of the tubular handle portion 104 is mechanically softer than the material of the center portion 103. The center portion 103 can be arranged to provide the required mechanical stiffness whereas the tubular handle portion 104 can be arranged to enable a user to have a good grip on the instrument with a relatively small pressing force.

In an instrument according to an exemplifying embodiment of the invention, the material of the center portion 103 is one whose modulus of elasticity is at least 1000 MPa. Examples of materials fulfilling this criterion include metals such as aluminum, titanium and magnesium, stainless steels and also some stiff polymers. The center portion 130 must be stiff enough so that upon use of the instrument, when forces act on the instrument tending to bend it, the radio frequency identifier 106 does not get loose or even break.

In an instrument according to an exemplifying embodiment of the invention, the material of the tubular handle portion 104 is preferably silicone or other suitable elastomer, not only because of its properties in view of gripping the instrument but also since these materials are flexible and soft enough to protect the radio frequency identifier 106 against impacts.

As an alternative to the structure of the instrument shown in FIG. 1a , the tubular handle portion 104 may be arranged to extend over the entire center portion 103 and to cover even part of the operative portion 101.

FIG. 2a shows a cross-section of an instrument according to an exemplifying embodiment of the invention. The cross-section shown in FIG. 2a corresponds to the cross-section shown in FIG. 1b . The instrument comprises an operative portion for performing the operations according to the purpose of use of the instrument, which operative portion is not shown in FIG. 2a , however. The instrument comprises a center portion 203 that constitutes a mechanical support core of the instrument and is mechanically connected to the operative portion. The instrument comprises a tubular handle portion 204 surrounding at least a part of the center portion 203 and constituting a gripping surface 205 of the instrument. The instrument further comprises a radio frequency identifier “RFID” 206 capable of being read from a distance of the instrument and capable of storing information. The radio frequency identifier 206 is located between the center portion 203 and the tubular handle portion 204 as illustrated in FIG. 2a . In this exemplifying case illustrated in FIG. 2a , the center portion 203 comprises a cavity for the radio frequency identifier 206.

FIG. 2b shows a cross-section of an instrument according to an exemplifying embodiment of the invention. The cross-section shown in FIG. 2b corresponds to the cross-section shown in FIG. 1b . In the exemplifying case illustrated in FIG. 2b , both the center portion 203 and the tubular handle portion 204 comprise a cavity for the radio frequency identifier 206.

FIG. 2c shows a cross-section of an instrument according to an exemplifying embodiment of the invention. The cross-section shown in FIG. 2c corresponds to the cross-section shown in FIG. 1b . In the exemplifying case illustrated in FIG. 2c , the center portion 203 comprises a flat facet for the radio frequency identifier 206. In one preferable embodiment, the facet could rather be described being a small cavity arranged on the surface of a basically cylindrical center portion 203. In one preferable embodiment, dimensions of the cavity correspond to those of the radio frequency identifier 206.

FIG. 3 shows a flowchart of a method according to an exemplifying embodiment of the invention for manufacturing an instrument that comprises an operative portion for operations according to the purpose of use of the instrument, a center portion mechanically connecting to the operative portion, and a radio frequency identifier. The method comprises the following actions:

-   -   action 301: placing the radio frequency identifier on the center         portion of the instrument, and subsequently     -   action 302: providing a tubular handle portion to surround the         radio frequency identifier and at least a part of the center         portion by casting the tubular handle portion on the instrument         so that the material of the tubular handle portion gets adhered         to the material of the center portion.

In a method according to an exemplifying embodiment of the invention, placing of the radio frequency identifier on the center portion of the instrument comprises attaching the radio frequency identifier to the surface of the center portion with adhesive material.

In a method according to an exemplifying embodiment of the invention, placing of the radio frequency identifier on the center portion of the instrument comprises attaching the radio frequency identifier to the surface of the center portion with adhesive material.

In a method according to another exemplifying embodiment of the invention, the center portion of the instrument is arranged to comprise a cavity with dimension corresponding to those of the radio frequency identifier to ensure that the radio frequency identifier remains at its desired position during casting of the tubular hand portion on the instrument.

According to the current understanding of the applicant, the various aspects and benefits of the invention are best achievable by a construction in which a tubular handle portion surrounds the radio frequency identifier and at least a part of the center portion of the instrument, in which the tubular handle portion is cast on the instrument so that material of the tubular handle portion is adhered to material of the center portion, in which the material of the tubular handle portion is silicone or some other elastomer which is mechanically softer than the material of the center portion, while the center portion whose modulus of elasticity is at least 1000 MPa constitutes a mechanical support core of the instrument, and wherein the center portion comprises a cavity for the radio frequency identifier.

The specific examples provided in the description given above should not be construed as limiting the applicability and/or the interpretation of the appended claims. 

1. A medical or a dental instrument comprising: an operative portion for operations according to a purpose of use of the instrument, a center portion mechanically connecting to the operative portion, and a radio frequency identifier on the center portion and capable of being read from a distance of the instrument and capable of storing information, characterized in that the instrument further comprises a tubular handle portion provided to surround the radio frequency identifier and at least a part of the center portion so that the radio frequency identifier is located between the tubular handle portion and the center portion, the tubular handle portion being cast on the instrument so that a material of the tubular handle portion is adhered to a material of the center portion.
 2. An instrument according to claim 1, wherein electrical resistivity of the material of the tubular handle portion is at least 10⁻³ Ωm at 20° C.
 3. An instrument according to claim 1, wherein the material of the tubular handle portion is electrically non-conductive.
 4. An instrument according to claim 1, wherein the material of the tubular handle portion is mechanically softer than the material of the center portion and the center portion constitutes a mechanical support core of the instrument.
 5. An instrument according to claim 1, wherein modulus of elasticity of the material of the center portion is at least 1000 MPa.
 6. An instrument according to claim 1, wherein the material of the tubular handle portion is silicone or some other elastomer.
 7. An instrument according to claim 1, wherein the center portion comprises a cavity for the radio frequency identifier.
 8. A method for manufacturing a medical or a dental instrument comprising an operative portion for operations according to a purpose of use of the instrument, a center portion mechanically connecting to the operative portion, and a radio frequency identifier, the method comprising: placing the radio frequency identifier on the center portion of the instrument, characterized in that the method further comprises: providing a tubular handle portion to surround the radio frequency identifier and at least a part of the center portion by casting the tubular handle portion on the instrument so that a material of the tubular handle portion gets adhered to a material of the center portion and so that the radio frequency identifier is located between the tubular handle portion and the center portion after the casting.
 9. A method according to claim 8, wherein placing of the radio frequency identifier on the center portion of the instrument comprises attaching the radio frequency identifier to a surface of the center portion with adhesive material.
 10. A method according to claim 8, wherein the center portion of the instrument is arranged to comprise a cavity with dimensions corresponding to those of the radio frequency identifier and the radio frequency identifier is placed into said cavity prior to casting the tubular handle portion on the instrument. 